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Systemic and network functions of the microtubule-associated protein tau: Implications for tau-based therapies

机译:微管相关蛋白Tau的系统和网络功能:对土壤的疗法的影响

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AbstractTau is a microtubule-associated neuronal protein, whose primary role was long thought to regulate axonal microtubule assembly. Tau is subject to many posttranslational modifications and can aggregate into neurofibrillary tangles, which are considered to be a hallmark of several neurodegenerative diseases collectively called “tauopathies”. The most common tauopathy is Alzheimer's disease, where tau pathology correlates with sites of neurodegeneration. Tau belongs to the class of intrinsically disordered proteins, which are known to interact with many partners and are considered to be involved in various signaling, regulation and recognition processes. Thus more recent evidence indicates that tau functionally interacts with many proteins and different cellular structures, which may have an important physiological role and may be involved in neurodegenerative processes. Furthermore, tau can be released from neurons and exert functional effects on other cells. This review article weighs the evidence that tau has subtle but important systemic effects on neuronal network function by maintaining physiological neuronal transmission and synaptic plasticity, which are possibly independent from tau's microtubule modulating activities. Implications for tau-based therapeutic approaches are discussed.Highlights
机译:<![cdata [ 抽象 Tau是一种微管相关的神经元蛋白,其主要作用是长期以来调节轴突微管组件的主要作用。 TAU受到许多后期修饰的影响,可汇集为神经纤维绦虫缠结,这被认为是统称的几种神经变性疾病的标志,称为“TAUOPOXIES”。最常见的tauoxathy是阿尔茨海默病,其中Tau病理与神经变性部位相关。 Tau属于本质上紊乱的蛋白质,已知与许多合作伙伴相互作用,并且被认为参与各种信号,调节和识别过程。因此,最近的证据表明,TAU在功能上与许多蛋白质和不同的细胞结构相互作用,这可能具有重要的生理作用,并且可以参与神经变性过程。此外,Tau可以从神经元释放并对其他细胞发挥功能作用。该审查文章权衡了通过维持生理神经元传播和突触塑性,Tau对神经元网络功能的微妙但重要的全身效应,这可能独立于Tau的微管调节活动。讨论了对TAU的治疗方法的影响。 突出显示

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